An extremely long thin wire carries a uniform linear charge density of 358 nC/m. Find the potential difference between points 5.0 m and 6.0 m from the wire, provided they are not near either end of the wire. (k = 1/4ne0 = 8.99 × 10° N. m2/c2) %3D %3D O 6.0 kV O None of the given choices. O 1.2 kV 0.21 kV O 0.215 kV

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
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Chapter20: Electric Potential And Capacitance
Section: Chapter Questions
Problem 5CQ
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An extremely long thin wire carries a uniform linear charge density
of 358 nC/m. Find the potential difference between points 5.0 m
and 6.0 m from the wire, provided they are not near either end of
the wire. (k = 1/4neo = 8.99 × 10° N. m2/c2)
. 1/4πεο
%3D
O 6.0 kV
O None of the given choices.
O 1.2 kV
0.21 kV
0.215 kV
Transcribed Image Text:An extremely long thin wire carries a uniform linear charge density of 358 nC/m. Find the potential difference between points 5.0 m and 6.0 m from the wire, provided they are not near either end of the wire. (k = 1/4neo = 8.99 × 10° N. m2/c2) . 1/4πεο %3D O 6.0 kV O None of the given choices. O 1.2 kV 0.21 kV 0.215 kV
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